Journal of Biological Chemistry · 2012 · 72 citations · 70 references
Cholinergic signaling induces Arc/Arg3.1, an immediate early gene crucial for synaptic plasticity. However, the molecular mechanisms that dictate Arc mRNA and protein dynamics during and after cholinergic epochs are little understood. Using human SH-SY5Y neuroblastoma cells, we show that muscarinic cholinergic receptor (mAchR) stimulation triggers Arc synthesis, whereas translation-dependent RNA decay and proteasomal degradation strictly limit the amount and duration of Arc expression. Chronic application of the mAchR agonist, carbachol (Cch), induces Arc transcription via ERK signaling and release of calcium from IP(3)-sensitive stores. Arc translation requires ERK activation, but not changes in intracellular calcium. Proteasomal degradation of Arc (half-life ∼37 min) was enhanced by thapsigargin, an inhibitor of the endoplasmic calcium-ATPase pump. Similar mechanisms of Arc protein regulation were observed in cultured rat hippocampal slices. Functionally, we studied the impact of cholinergic epoch duration and temporal pattern on Arc protein expression. Acute Cch treatment (as short as 2 min) induces transient, moderate Arc expression, whereas continuous treatment of more than 30 min induces maximal expression, followed by rapid decline. Cholinergic activity associated with rapid eye movement sleep may function to facilitate long term synaptic plasticity and memory. Employing a paradigm designed to mimic intermittent rapid eye movement sleep epochs, we show that application of Cch in a series of short bursts generates persistent and maximal Arc protein expression. The results demonstrate dynamic, multifaceted control of Arc synthesis during mAchR signaling, and implicate cholinergic epoch duration and repetition as critical determinants of Arc expression and function in synaptic plasticity and behavior.
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Ole Thastrup, Peter J. Cullen, Bjørn K. Drøbak et al. · Proceedings of the National Academy of Sciences · 1990 · 3.3K citations · Full text
Ca2+ Homeostasis, Intracellular Ca2+ Stores, Cytoskeleton +19
John F. Guzowski, Gregory L. Lyford, Gail D. Stevenson et al. · Journal of Neuroscience · 2000 · 1K citations · Full text
Arc/Arg3.1 Is Essential for the Consolidation of Synaptic Plasticity and Memories
Niels Plath, Ora Ohana, Björn Dammermann et al. · Neuron · 2006 · 830 citations · Full text
Synaptic Plasticity, Cognitive Science, Molecular Neuroscience +12
Arc/Arg3.1 Mediates Homeostatic Synaptic Scaling of AMPA Receptors
Jason D. Shepherd, Gavin Rumbaugh, Jing Wu et al. · Neuron · 2006 · 791 citations · Full text
Synaptic Plasticity, Molecular Physiology, Molecular Neuroscience +10